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    • 3. 发明申请
    • ELECTRIC ENERGY SCAVENGER DEVICE
    • 电能清除装置
    • WO2017069917A1
    • 2017-04-27
    • PCT/US2016/053751
    • 2016-09-26
    • ANALOG DEVICES, INC.
    • JIANG, YingqiZHANG, QianYANG, Kuang, L.
    • H02N2/18H01L41/113
    • H02N2/183H02N1/04
    • An electric energy scavenger device has a housing forming an internal chamber with an internal wall, and a movable element contained within the internal chamber. The movable element is freely movable and unconnected to any other movable element within the internal chamber. Within the internal chamber, the device also has a plurality of piezoelectric charge conversion elements positioned along the internal wall. The plurality of piezoelectric charge conversion elements are positioned side-by-side to contact the movable element when the movable element moves within the internal chamber. In addition, the movable element is configured to simultaneously contact at least two of the plurality of side-by-side piezoelectric charge conversion elements. During use, the movable element is freely movable within the internal chamber in response to movement of the entire housing.
    • 电能清除装置具有形成具有内壁的内部腔室的外壳以及包含在内部腔室内的可移动元件。 可移动元件可自由移动并且不连接到内部腔室内的任何其他可移动元件。 在内部腔室内,该装置还具有沿内壁定位的多个压电电荷转换元件。 当可移动元件在内部腔室内移动时,多个压电电荷转换元件并排定位以接触可移动元件。 另外,可动元件被配置为同时接触多个并排压电电荷转换元件中的至少两个。 在使用过程中,响应于整个壳体的移动,可移动元件在内室内自由移动。
    • 5. 发明申请
    • TRANSMITTING AND/OR RECEIVING DATA IN SIDE CHANNEL
    • 发送和/或接收边界信息中的数据
    • WO2011120333A1
    • 2011-10-06
    • PCT/CN2011/000543
    • 2011-03-30
    • THE HONG KONG UNIVERSITY OF SCIENCE AND TECHNOLOGYWU, KaishunZHANG, QianNI, Lionel
    • WU, KaishunZHANG, QianNI, Lionel
    • H04W4/20H01Q5/00
    • H04B14/026H04B14/02H04J3/1676
    • Systems, methods, and apparatus are described that employ specially designed interference patterns to build an in-band side channel without degrading the effective throughput of the main channel. A first device (100) includes a control component (130) that generates control information and an interference component (140) that transmits the control information (450) through emission of patterned interference data concurrently while other users are transmitting other data (420). A second device (300) receives the patterned interference data and the other data via a single antenna (350) and decodes the patterned interference data to extract the control data (450). The first device (100) transmits the other data (420) on a side channel (440) that resides in the same spectrum as the main channel (410) in which the other data (420) is emitted. The first device (100) encodes the interference patterns such that the control data (450) can be safely transmitted and extracted without effecting other data transmission. In one aspect, devices (100, 200, 300) can employ a dynamic cooperation multi-access channel (DC-MAC) protocol (1510) to schedule transmission of the other data (420) on the main channel (410), and to employ the side channel (440) for control and coordination.
    • 描述了使用专门设计的干扰模式来构建带内侧信道而不降低主信道的有效吞吐量的系统,方法和装置。 第一设备(100)包括产生控制信息的控制组件(130)和通过在其他用户正在发送其他数据的同时发射图案化干扰数据来发送控制信息(450)的干扰组件(140)(420)。 第二设备(300)经由单个天线(350)接收图案化的干扰数据和其它数据,并解码图案化的干扰数据以提取控制数据(450)。 第一设备(100)在与发送其他数据(420)的主信道(410)在同一频谱中的侧信道(440)上发送其他数据(420)。 第一设备(100)对干扰图案进行编码,使得可以安全地传输和提取控制数据(450)而不影响其他数据传输。 在一个方面,设备(100,200,300)可以采用动态协作多接入信道(DC-MAC)协议(1510)来调度主信道(410)上的其他数据(420)的传输,并且 使用侧信道(440)进行控制和协调。